• Title/Summary/Keyword: technique of design and construction

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Mix design of CSG method (CSG 공법적용을 위한 배합설계기법)

  • Kim, Ki-Young;Jeon, Je-Sung;Cho, Sung-Eun;Lee, Jong-Wook
    • Proceedings of the Korean Geotechical Society Conference
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    • 2005.10a
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    • pp.293-301
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    • 2005
  • The CSG(Cemented Sand and Gravel) method is construction technique using as raw materials earth and gravel generated from a local construction site, mixing them with cement and rolling with vibration rollers. Recently, The use of this method for cofferdam and large dam is gradually increasing in Japan. The purpose of an CSG mix design is to develop project specific properties to meet the structure design requirements. But uniform mix design of CSG method has not yet been established. The experience of practitioners from the geotechnical and concrete disciplines has given rise to two genernal approaches to mix design for CSG. This paper reports the concept of how to set the mix design according to modified Proctor compaction test process and the test results on properties such as compaction, compressive strength and modulus of elasticity that obtained by unconfined compression test.

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Improvement of the Design and Construction Technique of Orthotropic Steel Deck Bridges : Fatigue Strength of Three Dimensional Full-scaled Model (강바닥판교의 설계 및 시공성 향상방안 : 강바닥판교 3차원 실물 모형체의 피로강도)

  • Oh, Soon Taek
    • Journal of Korean Society of Steel Construction
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    • v.18 no.1
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    • pp.23-32
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    • 2006
  • This study was conducted to improve the design and construction technique of orthotropic steel-deck bridges. After conducting an F.E.M. analysis of the various rib types of the connection details, static and fatigue tests were conducted, using a three-dimensional, full-scaled, orthotropic, steel-deck-plate model with internal diaphrams, to check the fatigue strength depending on the types of details. The model structure was made of two types of longitudinal ribs: the domestic standard and the European rabbit types. The fatigue strength of the steel-deck system was found to have improved through the installation of an internal diaphram, as no cracks were found on the bottom round part of the scallop with a diaphram. There were no differences between the domestic and the European types of details in terms of strength may be partially influenced by the shape of the scallop and by the installation of an internal diaphram, but it can be improved more significantly according to the quality of the welding that will be done.

The Effects of Self-management on Supervisory Behaviors at a Construction Site (자기-관리 기법이 건설 현장 일선 관리자들의 안전 관리 행동에 미치는 영향)

  • Lee, Kyehoon;Lee, Jaehee;Moon, Kwangsu;Oah, Shezeen
    • Journal of the Korean Society of Safety
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    • v.27 no.6
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    • pp.151-159
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    • 2012
  • This study implemented self-management technique to improve supervisory behaviors at a construction site. Self-management in the current study consisted of goal setting, self-monitoring and providing reward for two supervisory behaviors; (1) conducting safety observations of workers safety behavior and (2) providing safe related feedback. Two supervisors severed as participants. An AB within-group design was adopted. After baseline(A), self-management technique was implemented(B). Results suggested that self-management was effective in increasing the two supervisory behaviors. Moreover, the increased supervisory behaviors were associated with improvement in workers' safety performance.

Establishment of BIM-LCC Analysis System for Selecting Optimal Design Alternative using Open KBIMS Libraries (개방형 KBIMS 라이브러리를 활용한 최적설계대안 선정을 위한 BIM-LCC분석 시스템 구축)

  • Lee, Chun-Kyong
    • Journal of the Korea Academia-Industrial cooperation Society
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    • v.21 no.12
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    • pp.153-161
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    • 2020
  • Building information modeling (BIM) is a smart construction technique that is recognized as essential for current construction facility projects. The Public Procurement Service (a construction project-ordering agency) announced a plan to introduce BIM and has required changing the operation of projects by using BIM design information. LCC analysis is essential for items, quantity, and cost information of the construction, and it is expected that efficient work will be achieved by using BIM design information. In this study, a BIM-LCC analysis system was established for selecting optimal design alternatives by actively using open KBIMS libraries. The BIM-LCC analysis system consists of a single alternative and an optimal alternative LCC analysis, but it has a limitation in that only the architecture and machine libraries have been applied. However, by applying BIM, practical use and work efficiency can be expected. In order to use the method as an LCC analysis support tool with BIM design information in the future, it will be necessary to collect user opinions and improve the UI.

Large-scale pilot test study on bearing capacity of sea-crossing bridge main pier pile foundations

  • Zhang, Xuefeng;Li, Qingning;Ma, Ye;Zhang, Xiaojiang;Yang, Shizhao
    • Geomechanics and Engineering
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    • v.7 no.2
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    • pp.201-212
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    • 2014
  • Due to the sea-crossing bridge span is generally large and main pier pile foundations are located in deep water and carry large vertical load, sea-crossing bridge main pier pile foundations bearing mechanism and load deformation characteristics are still vague. Authors studied the vertical bearing properties of sea-crossing bridge main pier pile foundations through pilot load tests. Large tonnage load test of Qingdao Bay Bridge main pier pile program is designed by using per-stressed technique to optimize the design of anchor pile reaction beam system. Test results show that the design is feasible and effective. This method can directly test bearing capacity of main pier pile foundations, and analysis bearing behaviors from test results of sensors which embedded in the pile. Through test study the vertical bearing properties of main pier pile foundation and compared with the generally short pile, author summarized the main pier pile foundations vertical bearing capacity and the main problem of design and construction which need to pay attention, and provide a reliable basis and experience for sea-crossing bridge main pier pile foundations design and construction.

Construction of NURBS Model for Preliminary High-Speed Monohull Design Based on Parametric Approach (파라메트릭 기법을 고속 단동선의 NURBS 모델링)

  • Nam Jong-Ho
    • Journal of Ocean Engineering and Technology
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    • v.20 no.3 s.70
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    • pp.82-87
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    • 2006
  • An approach to model a high-speed monohull vessel is introduced. The high-speed monohull form belonging to the category of multihull is drawing new attention, due to the rapidly growing trend of fast passenger ships and military purpose. Multihull forms are much thinner in their overall shape, compared to those of the conventional commercial vessels. Moreover, the parent hull forms are not readily obtainable when a new design is intended, which makes it hard to perform various technical calculations in terms of hull optimization, hydrodynamic computation, structural design, and so forth. In this paper, a parametric technique is used to design a high-speed hull form. To model a hull form, NURBS (Non Uniform Rational B-Spline) representation is used. The goal of research is to provide a fast and convenient tool to design an initial hull form with fewer parameters available in the early design stage. The technique employed in this paper will be applied to the design of multihull forms, such as catamaran, trimaran, and semi-swath.

Challenges and Future of Prefabricated Pipe Spools

  • Tadwalkar, Sahil;Lee, Yujin;Fischer, Martin
    • International conference on construction engineering and project management
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    • 2022.06a
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    • pp.678-685
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    • 2022
  • Prefabrication is a construction technique that is increasingly being applied to different building components due to its many benefits, including higher quality and lower waste. Despite these advantages, there are challenges in execution of these components on projects, due to transportation logistics, skilled labor requirements, and project management techniques. This paper investigates the current landscape of prefabricated pipe spools and potential solutions for minimizing these challenges. The scope of this research includes a proposed workflow, to standardize implementation of these components. Semi-structured interviews were conducted with industry professionals to assess current industry practices and the validity of the proposed workflow. Findings of this paper indicate that greater integration between design, fabrication and transportation is required to minimize inefficiencies when implementing prefabricated pipe spools on projects.

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Implementing an Application Tool of Life Cycle Cost Analysis (LCCA) for Highway Maintenance and Rehabilitation in California, USA

  • Kim, Changmo;Lee, Eul-Bum
    • International conference on construction engineering and project management
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    • 2015.10a
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    • pp.376-380
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    • 2015
  • Life-Cycle Cost Analysis (LCCA) for highway projects is known as an effective analytical technique that uses economic principles to evaluate long-term alternative investment options, especially for comparing the values of alternative pavement design structures and construction strategies. In the Unites States, the 2012 Moving Ahead for Progress in the 21st Century Act (MAP-21) amended the United States Code to mandate that the United States Government Accountability Office (GOA) conducts a study of the best practices for calculating life-cycle costs and benefits for the federally funded highway projects in 2013. The RealCost 2.5CA program was developed and adapted as an official LCCA tool to comply with regulatory requirements for California state highway projects in 2013. Utilization of this California-customized LCCA software helps Caltrans to achieve substantial economic benefits (agency cost and road user cost savings) for highway projects. Proper implementation of LCCA for roadway construction and rehabilitation would deliver noticeable savings of agency's roadway maintenance cost especially in developing counties where financial difficulties exist.

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Development of a Mountaineering Jacket Design Using a CWS(Construction Without Sewing) Method (무봉제(Construction Without Sewing: CWS)공법을 활용한 등산복 재킷 디자인에 관한 연구)

  • Chung, Sham-Ho;Kang, Min
    • Journal of the Korean Society of Costume
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    • v.61 no.6
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    • pp.1-14
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    • 2011
  • With the trend of wearing mountaineering wear as casual apparel as well as a continuous increase of mountaineers, mountaineering wear market has rapidly grown. New techniques to improve mountaineering apparel have been developed. Construction Without Sewing(CWS) is one of them. It is a sewing technique to improve performance and functions of new functional mountaineering apparel. CWS employs a welding machine with an adhesive tape and press instead of sewing so that it makes the apparel lighter and have better wearability, durability, and windproof and waterproof function, than sewed apparel. This study focuses on the concept, nature, and applications of the mountaineering wear manufactured by CWS. It also made an analysis of manufacturing process, and proposed three designs for the mountaineering wear created by CWS. With introducing the merits of CWS, the costumers will be have better understanding of CWS and break their stereotype that functional clothing is simply expensive without considering its benefits.

A Study on the typological characters and the expressive modalities of the architecture of 'the natural construction' of Frei Otto (프라이 오토의 '자연적 구조' 건축의 유형적 특성과 표현양태에 관한 연구)

  • Lee, Ran-Pyo
    • Korean Institute of Interior Design Journal
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    • v.15 no.6 s.59
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    • pp.68-76
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    • 2006
  • Founding himself on 'The Principle of Self-making' that is the instrument of 'the natural construction' and accomplishing the various interdisciplinary researches, Frei Otto could explicate the fundamental structure of life that is able to make visible the self-making processes in the nature, the technique and the architecture. It is the flexible pneumatic construction that is grounded on the fibrous organization. This was a milestone not only for him who wanted to put the idea of the new architectural form into practice, but also for the contemporary architecture that faces on the style-pluralistic disorientedness. The architectural form of the natural construction includes in itself three constitutional sub-ideas. One of them is 'the adaptable architecture', which is inclined to the architecture similar to the organization of human body, and the other 'the light architecture' that is in the pursuit of the optimal form through the minimal material. The last one is 'the ecological architecture' that aims to realize the optimal dwelling environment based on the effective energy consumption by accumulating knowledges of the always fluid and unstable nature. With these architectural ideas Frei Otto could develop a new architectural form language 'the light architecture of the natural construction'. This study is purposed to explain the various experiments that were made by his team and the basic principles of the structural dynamics of 'the architecture of the natural construction' and then to analyze the structures that were built on the ground of those principles.